Effects of Polysaccharide on Glucose-lipid Metabolism in Diabetic Rats
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Effects of Polysaccharide on Glucose-lipid Metabolism in Diabetic Rats
Chinese Journal of Experimental Traditional Medical FormulaeVol. 17, Issue 18, Pages: 232-234(2011)
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Published:2011
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XU Xian-xiang, LI Dao-zhong, PENG Dai-ying, et al. Effects of Polysaccharide on Glucose-lipid Metabolism in Diabetic Rats[J]. Chinese journal of experimental traditional medical formulae, 2011, 17(18): 232-234.
DOI:
XU Xian-xiang, LI Dao-zhong, PENG Dai-ying, et al. Effects of Polysaccharide on Glucose-lipid Metabolism in Diabetic Rats[J]. Chinese journal of experimental traditional medical formulae, 2011, 17(18): 232-234.DOI:
Effects of Polysaccharide on Glucose-lipid Metabolism in Diabetic Rats
Objective: To study the effect of Cuscuta chinensis polysaccharide(CCP) on glucose-lipid metabolism in diabetic rats induced by streptozotocin. Method: The rat diabetic model was established by 50 mg ·kg-1 streptozotocin iv
10 days later the rats with fasting blood glucose beyond 11.1 mmol ·L-1 were selected as diabetic rats. Experimental groups (n=8
each) included model
CCP (400
200
100 mg ·kg-1)
acarbose 15 mg ·kg-1
and another normal control group was also setup. After ig treatment for 15 days
body weight
fasting blood glucose
glycosylated serum protein
insulin
blood lipid level in rats were measured to evaluate the effect of CCP. Result: In model group
body weight was significantly reduced(P<0.01)and levels of fasting blood glucose
glycosylated serum protein
CHO
TG were increased (P<0.01 or P<0.05)while insulin level was reduced(P<0.01)
compared with those in the normal control. CCP 200
400 mg ·kg-1 could significantly improve the weight loss of diabetic rats(P<0.05
P<0.01)
reduce fasting blood glucose and glycosylated serum protein(P<0.01 or P<0.05)
CCP 400 mg ·kg-1 could significantly reduce CHO level(P<0.05). CCP 400
200
100 mg ·kg-1 could significantly reduce TG level(P<0.01 or P<0.05). No obvious effect of CCP on insulin level was observed. Conclusion: CCP could improve glucose-lipid metabolism for the experimental diabetic rats.